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Word order and Broca's region: evidence for a supra-syntactic perspective.词序与布洛卡区:超句法视角的证据
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Hum Brain Mapp. 2010 Mar;31(3):448-57. doi: 10.1002/hbm.20878.
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An introduction to anatomical ROI-based fMRI classification analysis.基于解剖学感兴趣区域的功能磁共振成像分类分析介绍。
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听觉功能成像中感知和语法的可分离神经印记。

Dissociable neural imprints of perception and grammar in auditory functional imaging.

机构信息

Max Planck Institute for Human Cognitive and Brain Sciences, MEG group, Muldentalweg 9, 04828 Bennewitz, Germany.

出版信息

Hum Brain Mapp. 2012 Mar;33(3):584-95. doi: 10.1002/hbm.21235. Epub 2011 Mar 9.

DOI:10.1002/hbm.21235
PMID:21391281
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6869964/
Abstract

In language processing, the relative contribution of early sensory and higher cognitive brain areas is still an open issue. A recent controversial hypothesis proposes that sensory cortices show sensitivity to syntactic processes, whereas other studies suggest a wider neural network outside sensory regions. The goal of the current event-related fMRI study is to clarify the contribution of sensory cortices in auditory syntactic processing in a 2 × 2 design. Two-word utterances were presented auditorily and varied both in perceptual markedness (presence or absence of an overt word category marking "-t"), and in grammaticality (syntactically correct or incorrect). A multivariate pattern classification approach was applied to the data, flanked by conventional cognitive subtraction analyses. The combination of methods and the 2 × 2 design revealed a clear picture: The cognitive subtraction analysis found initial syntactic processing signatures in a neural network including the left IFG, the left aSTG, the left superior temporal sulcus (STS), as well as the right STS/STG. Classification of local multivariate patterns indicated the left-hemispheric regions in IFG, aSTG, and STS to be more syntax-specific than the right-hemispheric regions. Importantly, auditory sensory cortices were only sensitive to the overt perceptual marking, but not to the grammaticality, speaking against syntax-inflicted sensory cortex modulations. Instead, our data provide clear evidence for a distinction between regions involved in pure perceptual processes and regions involved in initial syntactic processes.

摘要

在语言处理中,早期感觉和高级认知大脑区域的相对贡献仍然是一个悬而未决的问题。最近有一个有争议的假设提出,感觉皮质对句法过程敏感,而其他研究则表明在感觉区域之外存在更广泛的神经网络。本事件相关 fMRI 研究的目的是在 2×2 设计中阐明感觉皮质在听觉句法处理中的贡献。两个词的话语通过听觉呈现,在感知标记(是否存在明显的词类标记“-t”)和语法(句法正确或不正确)方面都有所不同。数据采用多元模式分类方法,并辅以传统的认知减法分析。方法的结合和 2×2 设计揭示了一个清晰的画面:认知减法分析在一个包括左侧 IFG、左侧 aSTG、左侧颞上沟(STS)以及右侧 STS/STG 的神经网络中发现了初始句法处理特征。局部多元模式的分类表明左侧 IFG、aSTG 和 STS 区域比右侧半球区域更具有语法特异性。重要的是,听觉感觉皮质仅对明显的感知标记敏感,而对语法性不敏感,这表明语法不会对感觉皮质产生影响。相反,我们的数据为参与纯感知过程的区域和参与初始句法过程的区域之间的区别提供了明确的证据。